Department of Plant Pathology, 351 Bessey Hall, Iowa State University, Ames, IA 50011, USA.
Mol Plant Pathol. 2002 Jul 1;3(4):283-8. doi: 10.1046/j.1364-3703.2002.00117.x.
Summary The Pto resistance gene in a gene-for-gene interaction with the avrPto avirulence gene governs resistance to bacterial speck of tomato. A member of a small gene family in tomato, Pto encodes a serine/threonine kinase that interacts in the yeast two-hybrid system with the product of avrPto, an 18-kDa hydrophilic protein. Over the past decade, studies of these genes, their products, and the defence response signalling pathway they govern have led to significant advances in our understanding of the biochemistry of Pto, the bacterial delivery and Pto recognition specificity for AvrPto, and candidate components in the pathway and their potential functions. This article provides an update of recent advances, which include the discovery of AvrPto structure-function relationships in disease and resistance, discovery of a second avirulence protein (AvrPtoB) recognized by Pto and its limited similarity to AvrPto, expression analysis and functional characterization of transcription factors Pti4, Pti5, and Pti6 that interact with Pto, analyses of Pto over-expression that activates defence responses independent of AvrPto, and comparisons of Pto gene family members and homologues in tomato and other Solanaceae, as well as other plant species. These comparisons, in particular, have provided exciting new insight into the antiquity of the Pto gene family and of the capacity for specific recognition of AvrPto that activates plant defence.
摘要 Pto 抗性基因与 avrPto 无毒基因在基因对基因互作中控制番茄细菌性斑点病的抗性。Pto 是番茄小基因家族的一个成员,编码一个丝氨酸/苏氨酸激酶,它在酵母双杂交系统中与 avrPto 的产物相互作用,avrPto 的产物是一种 18kDa 的亲水蛋白。在过去的十年中,对这些基因、它们的产物以及它们所调控的防御反应信号通路的研究,使我们对 Pto 的生化特性、AvrPto 对 Pto 的细菌传递和识别特异性以及该途径中的候选成分及其潜在功能有了更深入的了解。本文更新了最近的进展,包括发现 AvrPto 在疾病和抗性中的结构-功能关系、发现第二个被 Pto 识别的无毒蛋白(AvrPtoB)及其与 AvrPto 的有限相似性、与 Pto 相互作用的转录因子 Pti4、Pti5 和 Pti6 的表达分析和功能特征、激活独立于 AvrPto 的防御反应的 Pto 过表达分析,以及番茄和其他茄科植物以及其他植物物种的 Pto 基因家族成员和同源物的比较。这些比较特别为 Pto 基因家族的古老性和特异性识别 AvrPto 的能力提供了令人兴奋的新见解,而这种特异性识别能力激活了植物防御。